Safe · Effective · Low-maintenance clean technology

AirPurify Coat (FBp501)

Indoor air purification and odour-removal solution

Feibo’s formaldehyde-removing antibacterial nano solution uses advanced Japanese photocatalyst technology, combining nano titanium dioxide, apatite and nano silver. Working under visible light and in the dark, it breaks down toxic gases such as formaldehyde and TVOC and delivers strong antibacterial performance. Certified testing shows a removal rate of up to 95% and an antibacterial rate of 99%. Widely used in commercial spaces, healthcare facilities and premium homes.

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AirPurify Coat
Product overview

Composite nano solution

Product features:

  • Japanese high-crystallinity titanium dioxide: high catalytic efficiency and strong stability

  • Photocatalyst particle size 5–10 nm anatase structure, well dispersed, no agglomeration

  • Absorption spectrum extended to 600 nm (UV to visible light) — still breaks down pollutants in low light

  • Effectively degrades formaldehyde, ammonia, benzene, TVOC and other harmful gases and odours

  • Long-lasting antibacterial action, 99% antibacterial rate

Functions:

Breaks down formaldehyde, antibacterial and deodorising, air purification, healthier indoor environment

Typical uses:

Hospitals, offices, schools, hotels, premium homes and public venues that need cleaner air

Main ingredients:

Nano titanium dioxide, apatite, nano silver, composite additives

How it works

Functions and performance

How it breaks down formaldehyde, TVOC and other harmful gases

Once sprayed, the new-generation composite nano solution forms a nano film on the surface. Under light the film undergoes a photocatalytic reaction, continuously breaking down formaldehyde and other harmful gases and generating highly oxidising free oxygen radicals and active oxygen that convert organic pollutants into harmless water and carbon dioxide.

Antiviral and antibacterial mechanism
Antiviral and antibacterial mechanism

Antiviral, antibacterial and pollutant-breakdown mechanism

  • Mechanism 1: silver ions react with the sulfhydryl groups of bacteria and viruses, inhibiting them.
  • Mechanism 2: superoxide radicals break down bacteria, harmful gases and odours and envelop viruses.
  • Mechanism 3: the charged material surface pulls at bacterial cell membranes, rupturing them and killing the bacteria.
  • Mechanism 4: under light the material directly breaks down the protective capsid proteins and mRNA enzymes of viruses so they can no longer replicate.
Evidence

Test certificates

Full laboratory test reports are available on request.

Treatment plans

Indoor air photocatalyst treatment plans

Confirm the actual pollution level first so we can define the most accurate treatment plan. Pollution levels are graded against the GB 50325-2010 indoor-air limits:

Pollutant (mg/m³)GB 50325-2010 limit<2× (mild)<4× (moderate)<6× (severe)>6× (extreme)
Formaldehyde0.080.10–0.300.31–0.500.51–0.70>0.7
Benzene0.090.11–0.310.32–0.510.52–0.71>0.71
Ammonia0.200.2–0.50.51–0.80.81–1.11>1.11
TVOC0.500.6–1.21.3–1.81.9–2.5>2.5

Based on the result we issue a professional analysis report and agree an economical treatment plan with you:

PlanLevelTypical situationMain products (composite nano solution range)
Plan 1<2× — mildSimple fit-out, little furniture, slight odourOne pass of formaldehyde-removing antibacterial nano solution + instant deodoriser
Plan 2<4× — moderateMore furniture, flooring, noticeable odour and mild discomfort, test above limitTwo passes of nano solution + VOC remover + instant deodoriser
Plan 3<6× — severeDense furniture, custom joinery, flooring and wallpaper, strong odour, hard to stay long, test above limitTwo passes of nano solution + VOC remover + instant deodoriser + plant-extract atomising treatment
Plan 4>6× — extremeVery dense furniture, acoustic wall materials, poor ventilation, pungent odour, test more than 6× the limitBenzene/ammonia activator + two passes of nano solution + polymer formaldehyde enzyme + VOC remover + instant deodoriser + plant-extract atomising treatment
Services

Treatment services

Office air treatment
Office air treatment
Basic space protection
Basic space protection
New-home air improvement
New-home air improvement
Application process

How we apply it

We follow a standardised indoor air treatment process so every project reaches its purification target efficiently, reliably and safely. A typical process:

STEP 1

Area protection and preparation

Our technical team surveys the site, confirms feasibility, assesses environmental factors and defines the comparison test areas.

STEP 2

Surface treatment and formaldehyde-removal coating

Pollution sources such as exposed boards and cabinet joints are treated with a polymer formaldehyde-removing enzyme, sprayed in several passes where needed for full penetration and complete breakdown of formaldehyde and odours.

STEP 3

Photocatalyst spray application

Ceilings, walls, furniture and other large surfaces are sprayed with nano photocatalyst to raise overall purification performance — non-source surfaces are covered too, building a complete purifying environment.

STEP 4

Curing and sealed reaction

After application the room is kept closed for 8–12 hours so the treatment reacts fully with the pollution sources; ventilate after 12 hours and use the room normally after 24 hours.

STEP 5

Inspection, re-test and hand-over

Key areas are tested after treatment to confirm every pollution point has been handled. A re-test within 7 days confirms compliance with national standard GB50325-2010 in a single treatment.

STEP 6

Customer cooperation and sealed curing

After application, keep doors, windows and air equipment closed and the room sealed for 8–12 hours so the product reacts fully. Leave space around furniture; heavily polluted areas may need repeat treatment.

Formaldehyde over the limit, lingering odours or bacteria in your air?

Feibo nano air-purifying coating: no consumables, zero maintenance, measurably better indoor air.
Our solution is widely used in hospitals, office buildings and premium homes — get in touch.

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